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Quantitative characterization of specific targeting of tumor cells by antibody-functionalized particles

机译:抗体功能化颗粒对肿瘤细胞特异性靶向的定量表征

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Receptor-ligand binding has been one of the more popular approaches to specifically targeting tumor cells. In this work, targeting efficiency was quantitatively characterized using silica particles functionalized with EpCAM antibodies and EpCAM-expressing BT-20 breast cancer cells. The effects of incubation time and particle concentration on the number of functionalized particles bound to target cells were experimentally investigated. The number of bound particles was found to increase with particle concentration, but not necessarily with incubation time. While particle desorption and cellular loss of binding affinity in time seem to be negligible, cell-particle-cell interaction was identified as the limiting mechanism for the number of particles bound to target cells. The current findings suggest that separation of a bound particle from a cell may be detrimental to cellular binding affinity.
机译:受体-配体结合一直是特异性靶向肿瘤细胞的更流行的方法之一。在这项工作中,使用被EpCAM抗体和表达EpCAM的BT-20乳腺癌细胞功能化的二氧化硅颗粒定量地表征了靶向效率。实验研究了孵育时间和颗粒浓度对结合到靶细胞上的功能化颗粒数量的影响。发现结合颗粒的数量随颗粒浓度而增加,但不一定随孵育时间而增加。虽然颗粒的解吸和结合亲和力在时间上的细胞损失似乎可以忽略不计,但细胞-颗粒-细胞之间的相互作用被认为是限制与靶细胞结合的颗粒数量的限制机制。当前的发现表明从细胞中分离结合的颗粒可能对细胞结合亲和力有害。

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